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    • 92. 发明专利
    • Apparatus for measuring load weight of receiver tank
    • 用于测量接收罐负荷重量的装置
    • JP2011133264A
    • 2011-07-07
    • JP2009291013
    • 2009-12-22
    • Kanematsu Engineering Kk兼松エンジニアリング株式会社
    • NAGANO KOICHIYAMAZAKI YOSHIHIROYAMAZAKI RYOJI
    • G01G19/10
    • PROBLEM TO BE SOLVED: To provide an apparatus for measuring a load weight of a receiver tank, capable of facilitating accurate measurement of a load of the receiver tank of a tank vehicle by a simple constitution. SOLUTION: A hydraulic cylinder for lifting is provided on a chassis frame of the tank vehicle so that it can come into contact with the bottom of the receiver tank. The hydraulic cylinder for lifting is positioned ahead of the center of a loading object in the receiver tank and lifts the receiver tank upward so that the tank may be put in a state of being supported at two points by a dumping shaft and the cylinder to measure the load of the receiver tank. Accordingly, the load weight of the receiver tank can be measured accurately and easily by the simple constitution. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于测量接收罐的负载重量的装置,其能够通过简单的结构有助于准确测量罐车的接收罐的负载。 解决方案:用于提升的液压缸设置在油罐车底盘框架上,使其能够与接收罐的底部接触。 用于提升的液压缸位于接收罐中的装载物体的中心的前方,并且将接收器罐向上提升,使得罐可以通过倾卸轴和气缸在两个点处被支撑以测量 接收罐的负载。 因此,通过简单的结构,可以准确且容易地测量接收罐的负载重量。 版权所有(C)2011,JPO&INPIT
    • 94. 发明专利
    • Load-measuring device for forklift
    • 用于叉车的负载测量装置
    • JP2010156562A
    • 2010-07-15
    • JP2008333685
    • 2008-12-26
    • Sumitomonacco Materials Handling Co Ltd住友ナコ マテリアル ハンドリング株式会社
    • HINAMI ATSUSHIMIYAZAKI KAORU
    • G01G19/10G01G23/01
    • PROBLEM TO BE SOLVED: To improve the safety, when measuring a weight at a zero point, in a state wherein a fork is not loaded, in a load-measuring device for forklift. SOLUTION: This load-measuring device is so designed that the weight at the zero point is measured during the stoppage of the forklift. In measuring the weight at the zero point, accordingly a measuring person need not pay attention to the neighborhood so as not to come into contact with persons who are present on the premises of a factory, a warehouse, or the like, or with an obstacle, and therefore the safety on the occasion of measuring the zero-point weight can be improved. This is more effective, the narrower the premises are. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提高安全性,当在叉子未装载的状态下测量零点处的重量时,在用于叉车的负载测量装置中。

      解决方案:该负载测量装置被设计成在叉车停止期间测量零点处的重量。 在测量零点的重量时,测量人员不需要注意邻里,以免与在工厂,仓库等的场所或障碍物中存在的人接触 因此能够提高零点重量的测量时的安全性。 这是更有效的,房屋越窄。 版权所有(C)2010,JPO&INPIT

    • 95. 发明专利
    • Occupant detecting device
    • 检测设备
    • JP2009192243A
    • 2009-08-27
    • JP2008030412
    • 2008-02-12
    • Toyota Motor Corpトヨタ自動車株式会社
    • KAJIWARA HIDEAKI
    • G01G19/52B60N2/90B60R21/16G01G19/10
    • PROBLEM TO BE SOLVED: To provide an occupant detecting device which properly detects a seated state of an occupant, the weight of the seated occupant, etc. even when a power supply system is abnormal.
      SOLUTION: The occupant detecting device detects the occupant seated on a sitting part of an occupant seat. The device includes a bladder which is provided in the sitting part of the occupant seat and which is pressed by the weight of the occupant seated on the sitting part and is filled with a fluid, an electric fan which operates on the basis of the pressure applied to the fluid, and an occupant weight discriminating means which detects the operating state of the electric fan and discriminates the weight of the occupant on the basis of the detected operating state of the electric fan.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:即使在电源系统异常的情况下,也能够提供适当地检测乘员的就座状态,就座乘客的重量等的乘员检测装置。

      解决方案:乘客检测装置检测坐在乘员座椅的坐着部分上的乘员。 该装置包括设置在乘员座椅的坐姿部分中并被乘坐在座椅上的乘员的重量按压并且填充有流体的气囊,电风扇基于施加的压力而操作 以及乘员重量识别装置,其检测电风扇的运行状态,并基于检测到的电动风扇的运行状态来区分乘员的体重。 版权所有(C)2009,JPO&INPIT

    • 98. 发明专利
    • Load measuring instrument for construction machine
    • 建筑机械负载测量仪器
    • JP2007298449A
    • 2007-11-15
    • JP2006127804
    • 2006-05-01
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • WATANABE YUTAKAYAGYU TAKASHIYASUDA TOMOHIKO
    • G01G19/02G01G19/10
    • PROBLEM TO BE SOLVED: To reduce an influence of a load measuring error in a suspension cylinder generated by a tentative error factor related to a working condition in loading work for loading a cargo onto a body. SOLUTION: This load measuring instrument includes pressure sensors 5a, 5b for measuring a front side load applied to the front suspension cylinder 4a, pressure sensors 5c, 5d for measuring a rear side load applied to the rear suspension cylinder 4b, and a load computing means for computing a load G of a heavy weight including a vehicle body 1, the body 2, the loaded cargo, includes a front-load-to-rear-load ratio computing means for computing a front-load-to-rear-load ratio Rfb that is a ratio of the front side load measured by the pressure sensors 5a, 5b to the rear side load measured by the pressure sensors 5c, 5d, when the cargo is loaded onto the body 2, and includes a correction means for correcting the load G computed by the load computing means, based on the front-load-to-rear-load ratio Rfb computed by the front-load-to-rear-load ratio computing means. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:减少由于与将货物装载到车身上的装载作业中的工作状态相关的暂时性误差因子而产生的悬架缸中的载荷测量误差的影响。 解决方案:该负载测量仪器包括用于测量施加到前悬架缸4a的前侧负载的压力传感器5a,5b,用于测量施加到后悬架缸4b的后侧负载的压力传感器5c,5d,以及 负载计算装置,用于计算包括车体1,主体2,装载货物的重量的负载G,包括用于计算前后负载比的前负载比计算装置 负载比Rfb,其是当货物被装载到主体2上时由压力传感器5a,5b测量的前侧负载与由压力传感器5c,5d测量的后侧负载的比率,并且包括校正装置 用于根据由前负载比计算装置计算的前后负载比Rfb来校正由负荷计算装置计算出的负载G。 版权所有(C)2008,JPO&INPIT
    • 99. 发明专利
    • Load measuring device for construction machine
    • 建筑机械负载测量装置
    • JP2007197133A
    • 2007-08-09
    • JP2006016491
    • 2006-01-25
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • SUGAWARA KAZUHIROWATANABE YUTAKA
    • B66C23/90E02F9/24G01G19/10
    • PROBLEM TO BE SOLVED: To reduce leaning of static friction force generated between a cylinder tube of a boom cylinder and a piston rod on one side to measure load with high precision.
      SOLUTION: This load measuring device for the construction machine is provided with proportional solenoid valves 34, 35 provided between a direction control valve 22 for controlling flow of pressure oil for driving the boom cylinder 5 and a pilot pump being an oil pressure source of pilot pressure for operating the direction control valve. A controller 40 is set to control the proportional solenoid valves 34, 35 so that the boom cylinder 5 vibrates minutely by supplying pressure oil into a bottom side oil chamber 5c and a rod side oil chamber 5d of the boom cylinder 5 alternately to such extent that the boom cylinder 5 is not extended or contracted before computation for calculating holding force is performed when an order for measuring weight of a load 60 by operating a measurement ordering switch 41 manually is given to the controller 40.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了减少在一侧的动臂缸的缸筒和活塞杆之间产生的静摩擦力的倾斜,以高精度测量载荷。

      解决方案:该施工机械负载测量装置设有比例电磁阀34,35,该比例电磁阀34,35设置在用于控制用于驱动动臂缸5的压力油流动的方向控制阀22和作为油压源的先导泵 用于操作方向控制阀的先导压力。 控制器40被设定为控制比例电磁阀34,35,使得动臂缸5通过向动臂缸5的底侧油室5c和杆侧油室5d交替地供给压力油而使压力油轻微地振动, 在通过操作测量订购开关41手动地测量负载60的重量的顺序被给予控制器40时,臂架缸5不计算用于计算保持力的计算之前不会伸展或收缩。(C) 2007年,日本特许厅和INPIT

    • 100. 发明专利
    • Anti-theft device and vehicle equipped with the same
    • 防盗装置和配备同一装置的车辆
    • JP2007008340A
    • 2007-01-18
    • JP2005192359
    • 2005-06-30
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • KAWACHI KOJI
    • B60R25/30B60G17/00B60R25/10B60R25/102B60R25/34G01F23/22G01G19/10
    • PROBLEM TO BE SOLVED: To provide an anti-theft device and a vehicle equipped with the anti-theft device which can detect whether or not the operation related to the theft based on the variation of the length of a buffer member by mounting a sensor less subject to disturbance while suppressing expense. SOLUTION: The vehicle is equipped with a plurality of wheels, and a suspension device wherein a length of the buffer member varies according to the load applied to the wheel. In the anti-theft device which detects whether or not the operation related to the theft has been performed from the outside, the buffer member has an inner cylinder filled with operating fluid, an outer cylinder forming an air chamber between the outer cylinder and the inner cylinder, a piston movable relative to the inner cylinder, an orifice inducing the operating fluid by the moving of the piston from the inner cylinder to the air chamber, and a thermistor disposed in the air chamber. The anti-theft device detects variation amount of the length for each buffer member based on an electric amount related to the thermistor, estimates the load for each wheel based on the variation amount to be detected, and outputs the effect to the outside, when it is determined that the operation related to the theft has been performed from the outside based on the estimated load. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种防盗装置和配备有防盗装置的车辆,其可以基于通过安装来缓冲构件的长度的变化来检测与盗窃有关的操作 传感器较少受到干扰,同时抑制费用。 解决方案:车辆配备有多个车轮,以及悬架装置,其中缓冲构件的长度根据施加到车轮的负载而变化。 在防盗装置中,从外部检测与盗窃相关的操作是否已经进行,缓冲部件具有填充有工作流体的内筒,在外筒与内筒之间形成空气室的外筒 气缸,相对于内筒可移动的活塞,通过将活塞从内筒移动到空气室而引导工作流体的孔,以及设置在空气室中的热敏电阻。 防盗装置基于与热敏电阻有关的电量来检测每个缓冲部件的长度的变化量,基于要检测的变化量估计每个车轮的负载,并且将该效果输出到外部 基于估计的负载,确定与外部相关的操作已经被执行。 版权所有(C)2007,JPO&INPIT